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1 fate of cells of the nucleus pulposus in the intervertebral disk.
2 l spinal cord were collected parallel to the intervertebral disks.
3 tomy and the relationship of nerve roots and intervertebral disks.
4 onal procedures involving bone, soft tissue, intervertebral disks, and joints are safe and sufficient
5                              The lumbosacral intervertebral disk angle (LSIVDA), defined as the angle
6 n the literature this year include herniated intervertebral disk-associated radiculopathy, facet join
7 ation of facet joints, sacroiliac joints, or intervertebral disks (combination trial, 202 participant
8 ant role in the development of back pain and intervertebral disk degeneration in adults.
9 other widespread pathology related to GAG is intervertebral disk degeneration.
10 e for HTRA1 in the pathogenesis of joint and intervertebral disk degeneration.
11           The images obtained in the excised intervertebral disk demonstrated a signal intensity vari
12 had ligamentous injuries, three patients had intervertebral disk edema, and one patient had a cord co
13 rs; 42% women) with imaging-confirmed lumbar intervertebral disk herniation and persistent signs and
14 cal candidates with imaging-confirmed lumbar intervertebral disk herniation who were treated at 13 sp
15 ctures, vertebral body and facet contusions, intervertebral disk herniations, ligamentum nuchae strai
16   Magnetic resonance (MR) images of a lumbar intervertebral disk in a healthy volunteer were obtained
17 cord contusion, a ligamentous injury, and an intervertebral disk injury.
18                 A well-formed, complete S1-2 intervertebral disk is associated with LSTVs, but altera
19 ee-dimensional reconstruction of lamellae of intervertebral disk is presented.
20  spine alters the osmotic environment in the intervertebral disk (IVD) as interstitial water is expre
21 gulatory role of PN-1 in the pathogenesis of intervertebral disk (IVD) degeneration.
22                          Degeneration of the intervertebral disk (IVD) is a major pathological proces
23 yD88 pathway has yet to be elucidated in the intervertebral disk (IVD).
24 rtilage, muscle, bone, connective tissue and intervertebral disks (IVDs) as drivers of AIS susceptibi
25 -dimensional rAMIRA imaging at four cervical intervertebral disk levels.
26 ium (from the occiput to the second cervical intervertebral disk) may be radiographically obscure due
27 r this retrospective study, 41 patients (243 intervertebral disks; overall mean age, 68 years; 24 wom
28 rids by systemic immunization with cartilage/intervertebral disk proteoglycan (PG).
29 ation of facet joints, sacroiliac joints, or intervertebral disks, radiofrequency denervation combine
30 s, of which 24 resulted from misplacement of intervertebral disk space markers.
31 n 10-week-old dKO mice showed replacement of intervertebral disk structures (annulus fibrosus and nuc
32   The results suggest that MR imaging of the intervertebral disk, using sodium imaging and T2 mapping
33                              A complete S1-2 intervertebral disk was associated with LSTVs (P = .004)
34  Thin-section spin-echo images of an excised intervertebral disk were obtained with a horizontal fiel
35                    The magic angle effect in intervertebral disks will be observed with vertical magn